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Characteristics of wave amplitude and currents in South China Sea induced by a virtual extreme tsunami

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【作者】 任智源赵曦王本龙Frédéric Dias刘桦

【Author】 Zhi-yuan Ren;Xi zhao;Ben-long Wang;Frédéric Dias;Hua Liu;MOE Key Laboratory of Hydrodynamics,School of Naval Architecture,Ocean and Civil Engineering,Shanghai Jiao Tong University;National Marine Environmental Forecasting Center;School of Mathematics and Statistics,University College Dublin;

【机构】 MOE Key Laboratory of Hydrodynamics,School of Naval Architecture,Ocean and Civil Engineering,Shanghai Jiao Tong UniversityNational Marine Environmental Forecasting CenterSchool of Mathematics and Statistics,University College Dublin

【摘要】 This paper investigates the potential extreme tsunami hazards of the worst case scenario of the magnitude M_w=9.30 in South China Sea(SCS)as the Manila Trench is becoming one of the most hazardous tsunami source regions.Using nonlinear shallow water equations model,the time series of surface elevation,arrival time,spatial distributions of maximum wave amplitude and velocity distribution are presented.The characteristics of wave and currents are analyzed.The numerical results indicate that most of the energy of tsunami wave distributes in central and north part of SCS.The offshore regions around SCS will be influenced significantly by the tsunami currents generated by an earthquake in the Manila subduction zone.The maximum wave amplitude near Guangdong Province,Hainan Island,and Taiwan Island exceeds 4 m and velocities at the majority of measured locations near coast exceeds 2 m/s.Nested grid with high resolution is used to study the impacts of the tsunami on Hainan Island,Taiwan Island,and Lingding Bay.The regions with high hazard risk due to strong currents are identified.Finally,a fast tsunami warning method in SCS is developed and discussed,which can provide tsunami warning information in 5 min.

【Abstract】 This paper investigates the potential extreme tsunami hazards of the worst case scenario of the magnitude M_w=9.30 in South China Sea(SCS)as the Manila Trench is becoming one of the most hazardous tsunami source regions.Using nonlinear shallow water equations model,the time series of surface elevation,arrival time,spatial distributions of maximum wave amplitude and velocity distribution are presented.The characteristics of wave and currents are analyzed.The numerical results indicate that most of the energy of tsunami wave distributes in central and north part of SCS.The offshore regions around SCS will be influenced significantly by the tsunami currents generated by an earthquake in the Manila subduction zone.The maximum wave amplitude near Guangdong Province,Hainan Island,and Taiwan Island exceeds 4 m and velocities at the majority of measured locations near coast exceeds 2 m/s.Nested grid with high resolution is used to study the impacts of the tsunami on Hainan Island,Taiwan Island,and Lingding Bay.The regions with high hazard risk due to strong currents are identified.Finally,a fast tsunami warning method in SCS is developed and discussed,which can provide tsunami warning information in 5 min.

【基金】 supported by the National Natural Science Foundation of China(Grant Nos.11632012,51379123)
  • 【文献出处】 Journal of Hydrodynamics ,水动力学研究与进展B辑(英文版) , 编辑部邮箱 ,2017年03期
  • 【分类号】P731.25
  • 【被引频次】2
  • 【下载频次】63
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